Integrated molecular analysis identifies a conserved pericyte gene signature in zebrafish

周细胞 PDGFRB公司 生物 斑马鱼 壁细胞 细胞生物学 报告基因 计算生物学 转录组 基因 遗传学 基因表达 表型 内皮干细胞 体外
作者
Nathan D. Lawson,Yu-Huan Shih,Ann S. Grosse,Daneal Portman,Feston Idrizi
标识
DOI:10.1101/2021.09.13.459947
摘要

ABSTRACT Pericytes reside in capillary beds where they share a basement membrane with endothelial cells and regulate their function. However, little is known about embryonic pericyte development, in part, due to lack of specific molecular markers and genetic tools. Here, we applied single cell RNA-sequencing (scRNA-seq) of platelet derived growth factor beta (pdgfrb) -positive cells to molecularly characterize pericytes in zebrafish larvae. scRNA-seq revealed zebrafish cells expressing mouse pericyte gene orthologs while comparison to bulk RNA-seq from wild type and pdgfrb mutant larvae further refined a pericyte geneset. Subsequent integration with mouse pericyte scRNA-seq profiles revealed a core set of conserved pericyte genes. Using transgenic reporter lines, we validated pericyte expression of two genes identified in our analysis: NDUFA4 mitochondrial complex associated like 2a ( ndufa4l2a ), and potassium voltage-gated channel, Isk-related family, member 4 ( kcne4 ). Both reporter lines exhibited pericyte expression in multiple anatomical locations, while kcne4 was also detected in a subset of vascular smooth muscle cells. Thus, our integrated molecular analysis revealed a molecular profile for zebrafish pericytes and allowed us to develop new tools to observe these cells in vivo . SUMMARY STATEMENT An integrated molecular analysis in zebrafish identifies new molecular markers for pericytes.

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